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Infrastructure as social catalyst: Electric vehicle station planning and deployment

机译:基础设施作为社会催化剂:电动汽车站的规划和部署

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Although transportation infrastructure is often recognized as a powerful driver with regard to urban form, it is less frequently recognized for its ability to act as a social and behavioral catalyst. With the demographic shift of people moving to cities and the corresponding increase in competition for the space of transportation infrastructure, as well as the introduction of new technologies to transportation, innovation on how we approach the design of such an important urban component is essential. Here we present a project which responds to the question 'How do you plan and implement an infrastructure for the introduction of a new transportation technology?' This paper describes the planning, design and deployment of a network of electric vehicle (EV) charging stations in British Columbia from a synthetic human-centered design perspective. The project can be used as a reference when discussing holistic approaches to emerging technology based product adoption. In particular, this project focuses on the infrastructure required to support EV uptake and presents a new methodology for planning and deploying EV infrastructure based on a holistic multi-disciplinary approach. Our approach considers that the design of new infrastructure is both a social and cultural undertaking as much as it is a technical one. This view of infrastructure design requires a different design perspective and a pedagogical shift to accompany it The innovation-process in a service sector, such as infrastructure design, precedes the innovation in the product and, as such, a study of a novel process is important (Abernathy et al., 1975, Linton and Walsh., 2003). The methodology we propose for the deployment of a charging stations network is here presented in all its components, reflecting the approach described. We developed the project from a staged network framework built on the technology adoption curve. The framework is adaptable to an evolving deployment, technology and market timeline. The strategies adopted include context specific station phasing, regional network design, station design and branding, and a phased business model. The deployment plan is based on a GIS analysis of urban form which engages predictive analysis to inform where the infrastructure will have the most impact. Ultimately, the case presented demonstrates a complex set of variables involved in the design of infrastructure for emerging technologies, thus contributing to the argument for synthetic design in the study of innovations. (c) 2015 Elsevier Inc. All rights reserved.
机译:尽管交通基础设施通常被认为是城市形式的强大驱动力,但由于其能够充当社会和行为催化剂的能力而很少被认可。随着人口向城市转移的趋势以及对交通基础设施空间的竞争相应增加,以及在交通运输中引入新技术,对我们如何设计如此重要的城市组成部分进行创新至关重要。在这里,我们提出一个项目,以回答“您如何计划和实施引入新交通技术的基础设施?”的问题。本文从以人为本的综合设计角度描述了不列颠哥伦比亚省的电动汽车(EV)充电站网络的规划,设计和部署。当讨论基于新兴技术的产品采用的整体方法时,该项目可以用作参考。特别是,该项目侧重于支持电动汽车普及所需的基础设施,并提出了一种基于整体多学科方法的规划和部署电动汽车基础设施的新方法。我们的方法认为,新基础架构的设计既是一项技术,也是一项社会和文化事业。这种基础结构设计的观点需要不同的设计视角和相应的教学方法转变。服务部门的创新过程(例如基础结构设计)要先于产品的创新,因此,对新颖过程的研究非常重要。 (Abernathy等,1975; Linton和Walsh。,2003)。我们提出的用于充电站网络部署的方法在其所有组件中均已提出,反映了所描述的方法。我们从基于技术采用曲线的分阶段网络框架开发了该项目。该框架可适应不断发展的部署,技术和市场时间表。采取的策略包括特定于上下文的站点定相,区域网络设计,站点设计和品牌以及分阶段的业务模型。部署计划基于对城市形式的GIS分析,该分析进行了预测分析,以告知基础架构将在哪些方面产生最大的影响。最终,提出的案例证明了新兴技术基础架构设计中涉及的一组复杂变量,从而为创新研究中的综合设计提供了依据。 (c)2015 Elsevier Inc.保留所有权利。

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